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Estimation of epicardial strain using the motions of coronary bifurcations in biplane cineangiography

机译:在双平面血管造影中使用冠状动脉分叉运动估算心外膜应变

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摘要

A quantitative method for estimating epicardial deformation from the motion of the superficial coronary arteries is described. A structural model of the time-varying surface is constructed using tensor product basis functions which are bicubic Hermite in the spatial domain and sinusoidal in the temporal domain. The locii of the superficial coronary arteries are reconstructed interactively at diastasis and the bifurcations are tracked semiautomatically throughout as cardiac cycle. An initial surface is fitted to the vessels at diastasis and is subsequently deformed under the influence of the bifurcations. The Lagrange-Green strain tensor is used to obtain a complete description of surface strain over the entire region spanned by the model. The calculated deformation field varies smoothly over space and time and is not constrained by assumptions of isotropy or piecewise homogeneity. Results for a single cycle of a human heart are presented.
机译:描述了一种从冠状动脉表面运动估计心外膜变形的定量方法。使用张量积基函数构造时变表面的结构模型,这些函数在空间域是双三次Hermite,在时间域是正弦曲线。浅表冠状动脉的位置在隔断时进行交互式重建,并且在整个心动周期中半自动跟踪分叉。初始表面在渗入时适合于血管,随后在分叉的影响下变形。拉格朗日-格林应变张量用于获得模型跨越的整个区域的表面应变的完整描述。计算得出的变形场在空间和时间上平滑变化,不受各向同性或分段均匀性假设的约束。给出了人类心脏单个周期的结果。

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